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Sexual reproduction and mating-type-mediated strain development in the penicillin-producing fungus Penicillium chrysogenum

机译:产青霉素的真菌黄霉青霉的有性繁殖和交配型介导的菌株发育

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摘要

Penicillium chrysogenum is a filamentous fungus of major medical and historical importance, being the original and present-day industrial source of the antibiotic penicillin. The species has been considered asexual for more than 100 y, and despite concerted efforts, it has not been possible to induce sexual reproduction, which has prevented sexual crosses being used for strain improvement. However, using knowledge of mating-type (MAT) gene organization, we now describe conditions under which a sexual cycle can be induced leading to production of meiotic ascospores. Evidence of recombination was obtained using both molecular and phenotypic markers. The identified heterothallic sexual cycle was used for strain development purposes, generating offspring with novel combinations of traits relevant to penicillin production. Furthermore, the MAT1-1-1 mating-type gene, known primarily for a role in governing sexual identity, was also found to control transcription of a wide range of genes with biotechnological relevance including those regulating penicillin production, hyphal morphology, and conidial formation. These discoveries of a sexual cycle and MAT gene function are likely to be of broad relevance for manipulation of other asexual fungi of economic importance.
机译:产黄青霉是一种具有重要医学和历史意义的丝状真菌,是抗生素青霉素的原始和当今工业来源。该物种被认为是无性的,已有100多年的历史,尽管作出了共同努力,但仍不可能诱导有性繁殖,从而阻止了将性杂交用于改良品系。但是,使用交配型(MAT)基因组织的知识,我们现在描述可以诱导性周期导致减数分裂子囊孢子产生的条件。使用分子和表型标记都获得了重组的证据。鉴定出的异源性性周期用于菌株开发目的,产生具有与青霉素生产相关的性状的新颖组合的后代。此外,还发现主要以控制性身份着称的MAT1-1-1交配型基因可控制与生物技术相关的各种基因的转录,包括调节青霉素产生,菌丝形态和分生孢子的那些基因。 。性周期和MAT基因功能的这些发现可能与操纵其他具有经济重要性的无性真菌具有广泛的关系。

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  • 作者单位

    Christian Doppler Laboratory for "Fungal Biotechnology," Lehrstuhl fuer Allgemeine und Molekulare Botanik, Ruhr-Universitaet Bochum, D-44780 Bochum, Germany;

    Present address: BASF SE, 67056 Ludwigshafen, Germany;

    Christian Doppler Laboratory for "Fungal Biotechnology," Lehrstuhl fuer Allgemeine und Molekulare Botanik, Ruhr-Universitaet Bochum, D-44780 Bochum, Germany,School of Biology, University of Nottingham, University Park, Nottingham NG7 2RD, United Kingdom;

    Christian Doppler Laboratory for "Fungal Biotechnology," Lehrstuhl fuer Allgemeine und Molekulare Botanik, Ruhr-Universitaet Bochum, D-44780 Bochum, Germany;

    Christian Doppler Laboratory for "Fungal Biotechnology," Lehrstuhl fuer Allgemeine und Molekulare Botanik, Ruhr-Universitaet Bochum, D-44780 Bochum, Germany;

    BP BioFuels, Global Technology Center, San Diego, CA 92121;

    Anti-Infectives Microbiology, Sandoz GmbH, 6250 Kundl, Austria;

    Anti-Infectives Microbiology, Sandoz GmbH, 6250 Kundl, Austria;

    Abteilung Genetik Eukaryotischer Mikroorganismen, Institut fuer Mikrobiologie und Genetik, Georg-August Universitaet Goettingen, D-37077 Goettingen, Germany;

    School of Biology, University of Nottingham, University Park, Nottingham NG7 2RD, United Kingdom;

    Christian Doppler Laboratory for "Fungal Biotechnology," Lehrstuhl fuer Allgemeine und Molekulare Botanik, Ruhr-Universitaet Bochum, D-44780 Bochum, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    sexual recombination; secondary metabolism; ascomycete;

    机译:性重组;次生代谢子囊菌;
  • 入库时间 2022-08-18 00:39:53

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